Search Results - "Bargsten, Clayton"

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  1. 1

    Relativistic plasma nanophotonics for ultrahigh energy density physics by Purvis, Michael A., Shlyaptsev, Vyacheslav N., Hollinger, Reed, Bargsten, Clayton, Pukhov, Alexander, Prieto, Amy, Wang, Yong, Luther, Bradley M., Yin, Liang, Wang, Shoujun, Rocca, Jorge J.

    Published in Nature photonics (01-10-2013)
    “…The heating of dense matter to extreme temperatures motivates the development of powerful lasers 1 , 2 , 3 , 4 . However, the barrier the critical electron…”
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    Journal Article
  2. 2

    Efficient picosecond x-ray pulse generation from plasmas in the radiation dominated regime by Hollinger, Reed, Bargsten, Clayton, Shlyaptsev, Vyacheslav N., Kaymak, Vural, Pukhov, Alexander, Capeluto, Maria Gabriela, Wang, Shoujun, Rockwood, Alex, Wang, Yong, Townsend, Amanda, Prieto, Amy, Stockton, Patrick, Curtis, Alden, Rocca, Jorge J.

    Published in Optica (20-11-2017)
    “…The efficient conversion of optical laser light into bright ultrafast x-ray pulses in laser created plasmas is of high interest for dense plasma physics…”
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    Journal Article
  3. 3
  4. 4

    Volumetric creation of ultra-high-energy-density plasma by irradiation of ordered nanowire arrays by Bargsten, Clayton

    Published 01-01-2016
    “…Creating appreciable volumes of Ultra-High-Energy Density (UHED) matter in the laboratory is a challenge. Recent developments in the fabrication of vertically…”
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    Dissertation
  5. 5

    A Laboratory Light Source for Ultrafast Kinetics of EUV Exposure Processes and Ultra-Small Pitch Lithography by Cousin, Seth L., Bargsten, Clayton, Rinard, Eric, Ward, Rod, Hosier, Erik, Petersen, Brennan, Kapteyn, Henry, Vanelderen, Pieter, Petersen, John, van der Heide, Paul

    “…An ultra-short pulsed, ultra-broadband (∼ 13run-∼13 μm) light-source has been developed to drive atto- to femto- second time-resolved studies on EUV…”
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    Conference Proceeding
  6. 6

    Compact ultra-intense lasers and nanostructures open a path to extreme pressures by Rocca, Jorge J

    Published in Laser focus world (01-05-2017)
    “…Heating matter into the ultrahigh-energy density (UHED) regime characterized by pressures greater than a gigabar is a very challenging task. The UHED plasma…”
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    Magazine Article